Introduction. Burkholderia pseudomallei (BP) is a prime candidate for use in biowarfare and bioterrorism because it can be easily obtained (from the environment in endemic areas), propagated and prepared (robust organism rapidly growing on simple media), easily dispersed with high infectivity (aerosolization and contamination of water), and causes a rapidly developing, severe disease (melioidosis) with high mortality, even when properly diagnosed. Treatment of melioidosis is greatly complicated due to BP's intrinsic resistance to most classes of antibiotics. Current therapies are expensive and include 10 day intravenous administration of cephalosporins, followed by oral eradication therapy with a regimen of two to four drugs for 3-5 months. Infections of a large number of people would therefore be disastrous in terms of financial and human costs. In this project we will characterize efflux pumps of the resistance nodulation and cell division (RND) family, the suspected main players in BPs intrinsic and acquired antibiotic resistance. Using powerful molecular and genetic tools, we will characterize and assess the clinical significance of these pumps and construct strains that each express a single efflux pump as a tool for efflux pump inhibitor (EPI) discovery. We will then screen compound libraries for EPIs, with the project goal being the discovery of EPI lead compounds. It is hoped that these efforts will ultimately provide new therapeutic approaches for melioidosis by increasing the effectiveness of existing drug therapies, and by enabling the use of cheaper and readily available drugs. Project interactions. This project II.A.4 (Schweizer, PI) will have significant interactions with other RCE projects and core facilities. Genetic tools developed in this project will lead to obvious interactions with other projects involving Burkholderia ssp. and its mutants, including II.C.1, Fur-regulated genes (Vasil, PI), II.C.2, oxidative and nitrosative stress (Voskuil, PI), II.C.3, O2-dependent host defenses (Vazquez-Torres, PI), II.C.4, iron uptake (Holmes, PI) and II.A.1, role of innate immunity in pulmonary infection (Dow and Bosio, Co-Pis). Efflux mutants and pump overexpressing strains will be powerful tools for the drug discovery efforts initiated in project M.A.2., anti-infectives against select agents (Crick and Brennan, Co-Pis). The Select Agents Archive Core III.D (Robison, Director) will provide bacterial strains and clinical isolates; and the Genomics/Proteomics Core III.C. (Slayden, Director) will provide HTS screening facilities, and access to compound libraries and microarrays.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Specialized Center--Cooperative Agreements (U54)
Project #
5U54AI065357-02
Application #
7310292
Study Section
Special Emphasis Panel (ZAI1)
Project Start
Project End
Budget Start
2006-05-01
Budget End
2007-04-30
Support Year
2
Fiscal Year
2006
Total Cost
$216,023
Indirect Cost
Name
Colorado State University-Fort Collins
Department
Type
DUNS #
785979618
City
Fort Collins
State
CO
Country
United States
Zip Code
80523
Webb, Jessica R; Price, Erin P; Somprasong, Nawarat et al. (2018) Development and validation of a triplex quantitative real-time PCR assay to detect efflux pump-mediated antibiotic resistance in Burkholderia pseudomallei. Future Microbiol 13:1403-1418
York, Joanne; Nunberg, Jack H (2018) A Cell-Cell Fusion Assay to Assess Arenavirus Envelope Glycoprotein Membrane-Fusion Activity. Methods Mol Biol 1604:157-167
Rhodes, Katherine A; Somprasong, Nawarat; Podnecky, Nicole L et al. (2018) Molecular determinants of Burkholderia pseudomallei BpeEF-OprC efflux pump expression. Microbiology 164:1156-1167
Cummings, Jason E; Slayden, Richard A (2017) Transient In Vivo Resistance Mechanisms of Burkholderia pseudomallei to Ceftazidime and Molecular Markers for Monitoring Treatment Response. PLoS Negl Trop Dis 11:e0005209
Pettey, W B P; Carter, M E; Toth, D J A et al. (2017) Constructing Ebola transmission chains from West Africa and estimating model parameters using internet sources. Epidemiol Infect 145:1993-2002
Furuta, Yousuke; Komeno, Takashi; Nakamura, Takaaki (2017) Favipiravir (T-705), a broad spectrum inhibitor of viral RNA polymerase. Proc Jpn Acad Ser B Phys Biol Sci 93:449-463
Skyberg, Jerod A; Lacey, Carolyn A (2017) Hematopoietic MyD88 and IL-18 are essential for IFN-?-dependent restriction of type A Francisella tularensis infection. J Leukoc Biol 102:1441-1450
Plumley, Brooke A; Martin, Kevin H; Borlee, Grace I et al. (2017) Thermoregulation of Biofilm Formation in Burkholderia pseudomallei Is Disrupted by Mutation of a Putative Diguanylate Cyclase. J Bacteriol 199:
Randall, Linnell B; Georgi, Enrico; Genzel, Gelimer H et al. (2017) Finafloxacin overcomes Burkholderia pseudomallei efflux-mediated fluoroquinolone resistance. J Antimicrob Chemother 72:1258-1260
Podnecky, Nicole L; Rhodes, Katherine A; Mima, Takehiko et al. (2017) Mechanisms of Resistance to Folate Pathway Inhibitors in Burkholderia pseudomallei: Deviation from the Norm. MBio 8:

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